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Dynamics of spiral waves driven by a dichotomous periodic signal

机译:二分周期信号驱动的螺旋波的动力学

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摘要

We study the effects of a dichotomous periodic force on meandering and rigidly rotating spiral waves. For a meandering state, the periodic forcing induces more modulating frequencies according to the rules of frequency-locked relations and linear combinations. It can also generate some unique closed tip orbits. On the modulating period T-axis, there exist all kinds of resonant entrainment bands. Arnold tongues exist in the period-amplitude space. The width of entrainment bands is affected by the symmetry of positive and negative parts in each signal unit. In addition, appropriate choices of T-value can be used to eliminate spiral waves. For a rigidly rotating state, the periodic forcing can induce a transition toward meandering spiral waves via generating a transitive bidirectional spiral wave. It is very interesting that, after the transition, the meandering spiral wave has the same primary rotating period as the free meandering states.
机译:我们研究了二分周期力对弯曲和刚性旋转螺旋波的影响。对于曲折状态,周期性强制根据锁频关系和线性组合的规则诱导更多的调制频率。它也可以产生一些独特的闭合尖端轨道。在调制周期T轴上,存在各种共振夹带。 Arnold舌存在于周期振幅空间中。夹带的宽度受每个信号单元中正负部分的对称性影响。另外,可以使用适当选择的T值来消除螺旋波。对于刚性旋转状态,周期性强迫可以通过产生传递双向螺旋波来引起向蜿蜒螺旋波的过渡。有趣的是,在过渡之后,弯曲螺旋波具有与自由弯曲状态相同的主旋转周期。

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